[1] XU Yi, SONG Zhao-li, XU Zheng. Condenser inside spherical solar cell [J]. Acta Photonica Sinica, 2013, 42(7): 782-786.
[2] KLIMOV V I, MIKHAILOVSKY A A, XU S, et al. Optical gain and stimulated emission in nanocrystal quantum dots [J]. Science, 2000, 290: 314-318.
[3] CROOKER S A, HOLLINGSWORTH J A, TRETIAK S, et al. Spectrally resolved dynamics of energy transfer in quantum-dot assemblies: towards engineered energy flows in artificial materials[J]. Physical Review Letters, 2002, 89(18): 186802.
[4] STOFERLE T, SCHERF U, MAHRT R F. Energy transfer in hybrid organic/inorganic nanocomposites[J]. Nano Letters, 2009, 9(1): 453-456.
[5] FINLAYSON C E, GINGER D S, GREENHAM NC. Enhanced Frster energy transfer in organic/inorganic bilayer optical microcavities[J]. Chemical Physics Letters, 2001, 338(2): 83-87.
[6] FRANZL T, KLAR T A, SCHIETINGER S, et al. Exciton recycling in graded gap nanocrystal structures[J]. Nano Letters, 2004, 4(9): 1599-1603.
[7] WANG C L, FANG M, Han J S, et al. Two opposite effects of alcohols in the precipitation of aqueous nanocrystals[J]. Journal of Physical Chemistry C, 2009, 113(45): 19445-19451.
[8] SINGH S, NAKAMURA D, SAKAI K, et al. Investigation of low-temperature excitonic and defect emission from Ni-doped ZnO nanoneedles and V-doped ZnO nanostructured film[J]. New Journal of Physics, 2010, 12(2): 023007.
[9] YOU S H, HONG K J, JEONG T S, et al. Point-defect study from low-temperature photoluminescence of CdGa2Se4 layers through the postannealing in various ambient[J]. Journal of Applied Physics, 2010, 108(5): 053520.
[10] DANIEL R, FEDERICO C, MICHAEL J A. On the temperature dependence of point-defect-mediated luminescence in silicon[J]. Applied Physics Letters, 2009, 94: 251113.
[11] LV W, KAMIYA I, ICHIDA M, et al. Temperature dependence of electronic energy transfer in PbS quantum dot films[J]. Applied Physics Letters, 2009, 95(8): 083102.
[12] KANIYANKANDY S, RAWALEKAR S, VERMA S, et al. Charge carrier dynamics in thiol capped CdTe quantum dots[J]. Physical Chemistry Chemical Physics, 2010, 12(16): 4210-4216.
[13] CAMPOSA C E M, ERSCHING K, DE LIMAA J C, et al. Influence of minor oxidation of the precursor powders to form nanocrystalline CdTe by mechanical alloying[J]. Journal of Alloys and Compounds, 2008, 466(1): 80-86.
[14] WUISTER S F, KOOLE R, DONEGA C D M, et al. Temperature-dependent energy transfer in cadmium telluride quantum dot solids[J]. The Journal of Physical Chemistry. B, 2005, 109(12): 5504-5508.
[15] TALAPIN D V, ROGACH A L, SHEVCHENKO E V, et al. Dynamic distribution of growth rates within the ensembles of colloidal II -VI and III-V semiconductor nanocrystals as a factor governing their photoluminescence efficiency[J]. Journal of the American Chemical Society, 2002, 124(20): 5782-5790.
[16] ZHANG J, BADUGU R, LAKOWICZ J R. Fluorescence quenching of CdTe nanocrystals by bound gold nanoparticles in aqueous solution[J]. Plasmonics, 2008, 3(1): 3-11.
[17] CAO Liang-jun, YU Tian-lai, QIU Hong, et al. Dehydration processing in Nd3+-doped phosphate laser glass [J]. Acta Photonica Sinica, 2014, 43(1): 0116002.